The evaluation of the electrostatic potential in condensed phase simulations normally includes an ‘‘extrinsic’’ contribution that manifests natural imbalances in the surface charge distribution of the microscopic unit cell. Most directly affected are ion–solvent interaction energies, and depending on whether the specific simulation conditions eliminate the extrinsic potential or not, these energies can vary by a considerable amount. This is illustrated by examining simulations of dilute aqueous solutions of Cl− and Fe2+ that use either a cutoff scheme or Ewald summation. It is found that the ion–water potential energy can vary with the type of boundary condition by as much as ≊60 kJ mol−1 for Cl− and ≊800 kJ mol−1 for Fe2+. The difference i...
AbstractContinuum electrostatics models for ions in water provide apparent long range electrostatic ...
We present a useful methodology to simulate ionic fluids confined by two charged and perfectly condu...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
Ewald summation, which has become the de facto standard for computing electrostatic interactions in ...
Molecular Dynamics (MD) simulations are uniquely suitable for providing molecular-level insights int...
We study the influence of different metal-water potentials on the energetics of ion transfer reactio...
Ewald summation, which has become the de facto standard for computing electrostatic interactions i...
Understanding the response of the surface of metallic solids to external electric field sources is c...
Artificial electrostatic potentials can be present in supercells constructed for atomistic simulatio...
International audienceFree energy simulations for electrostatic and charging processes in complex mo...
We present a method to efficiently simulate nano-patterned charged surfaces inside an electrolyte so...
The osmotic pressure of dilute electrolyte solutions containing charged macro-ions as well as counte...
Theories of solvation free energies often involve electrostatic potentials at the position of a solu...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
Behaviour of electrolytes confined in cylindrical and slit pores are studied by computer simulations...
AbstractContinuum electrostatics models for ions in water provide apparent long range electrostatic ...
We present a useful methodology to simulate ionic fluids confined by two charged and perfectly condu...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...
Ewald summation, which has become the de facto standard for computing electrostatic interactions in ...
Molecular Dynamics (MD) simulations are uniquely suitable for providing molecular-level insights int...
We study the influence of different metal-water potentials on the energetics of ion transfer reactio...
Ewald summation, which has become the de facto standard for computing electrostatic interactions i...
Understanding the response of the surface of metallic solids to external electric field sources is c...
Artificial electrostatic potentials can be present in supercells constructed for atomistic simulatio...
International audienceFree energy simulations for electrostatic and charging processes in complex mo...
We present a method to efficiently simulate nano-patterned charged surfaces inside an electrolyte so...
The osmotic pressure of dilute electrolyte solutions containing charged macro-ions as well as counte...
Theories of solvation free energies often involve electrostatic potentials at the position of a solu...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
Behaviour of electrolytes confined in cylindrical and slit pores are studied by computer simulations...
AbstractContinuum electrostatics models for ions in water provide apparent long range electrostatic ...
We present a useful methodology to simulate ionic fluids confined by two charged and perfectly condu...
International audienceMolecular dynamics simulations of aqueous electrolytes generally rely on empir...